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缺铁大麦根中腺嘌呤磷酸核糖转移酶(APRT)的诱导活性:植物铁载体产生的一种可能作用。

Induced activity of adenine phosphoribosyltransferase (APRT) in iron-deficiency barley roots: a possible role for phytosiderophore production.

作者信息

Itai R, Suzuki K, Yamaguchi H, Nakanishi H, Nishizawa N K, Yoshimura E, Mori S

机构信息

Department of Applied Biological Chemistry, The University of Tokyo, Japan.

出版信息

J Exp Bot. 2000 Jul;51(348):1179-88.

Abstract

To isolate the genes involved in the response of graminaceous plants to Fe-deficient stress, a protein induced by Fe-deficiency treatment was isolated from barley (Hordeum vulgare L.) roots. Based on the partial amino acid sequence of this protein, a cDNA (HvAPT1) encoding adenine phosphoribosyltransferase (APRT: EC 2.4.2.7) was cloned from a cDNA library prepared from Fe-deficient barley roots. Southern analysis suggested that there were at least two genes encoding APRT in barley. Fe deficiency increased HvAPT1 expression in barley roots and resupplying Fe to the Fe-deficient plants rapidly negated the increase in HvAPT1 mRNA. Analysis of localization of HvAPT1-sGFP fusion proteins in tobacco BY-2 cells indicated that the protein from HvAPT1 was localized in the cytoplasm of cells. Consistent with the results of Northern analysis, the enzymatic activity of APRT in barley roots was remarkably increased by Fe deficiency. This induction of APRT activity by Fe deficiency was also observed in roots of other graminaceous plants such as rye, maize, and rice. In contrast, the induction was not observed to occur in the roots of a non-graminaceous plant, tobacco. Graminaceous plants generally synthesize the mugineic acid family phytosiderophores (MAs) in roots under Fe-deficient conditions. In this paper, a possible role of HvAPT1 in the biosynthesis of MAs related to adenine salvage in the methionine cycle is discussed.

摘要

为了分离参与禾本科植物对缺铁胁迫响应的基因,从大麦(Hordeum vulgare L.)根中分离出一种缺铁处理诱导的蛋白质。基于该蛋白质的部分氨基酸序列,从缺铁大麦根制备的cDNA文库中克隆了一个编码腺嘌呤磷酸核糖转移酶(APRT:EC 2.4.2.7)的cDNA(HvAPT1)。Southern分析表明,大麦中至少有两个编码APRT的基因。缺铁增加了大麦根中HvAPT1的表达,向缺铁植物重新供应铁迅速消除了HvAPT1 mRNA的增加。对HvAPT1-sGFP融合蛋白在烟草BY-2细胞中的定位分析表明,HvAPT1蛋白定位于细胞质中。与Northern分析结果一致,缺铁显著增加了大麦根中APRT的酶活性。在其他禾本科植物如黑麦、玉米和水稻的根中也观察到缺铁对APRT活性的这种诱导作用。相反,在非禾本科植物烟草的根中未观察到这种诱导现象。禾本科植物通常在缺铁条件下于根中合成 mugineic 酸家族植物铁载体(MAs)。本文讨论了HvAPT1在与甲硫氨酸循环中腺嘌呤补救相关的MAs生物合成中的可能作用。

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